4.8 Article

Graphene and Carbon-Nanotube Nanohybrids Covalently Functionalized by Porphyrins and Phthalocyanines for Optoelectronic Properties

Journal

ADVANCED MATERIALS
Volume 30, Issue 17, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.201705704

Keywords

covalent functionalization; graphene and carbon nanotubes; optoelectronic properties; porphyrin and phthalocyanine; synthesis

Funding

  1. National Natural Science Foundation of China [51172100, 51432006]
  2. Innovation Program of Shanghai Municipal Education Commission
  3. Ministry of Education of China [IRT13R24]
  4. State Administration of Foreign Experts Affairs of China [B13025]
  5. Australian Research Council
  6. Ministry of Education

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In recent years, there has been a rapid growth in studies of the optoelectronic properties of graphene, carbon nanotubes (CNTs), and their derivatives. The chemical functionalization of graphene and CNTs is a key requirement for the development of this field, but it remains a significant challenge. The focus here is on recent advances in constructing nanohybrids of graphene or CNTs covalently linked to porphyrins or phthalocyanines, as well as their application in nonlinear optics. Following a summary of the syntheses of nanohybrids constructed from graphene or CNTs and porphyrins or phthalocyanines, explicit intraconjugate electronic interactions between photoexcited porphyrins/phthalocyanines and graphene/CNTs are introduced classified by energy transfer, electron transfer, and charge transfer, and their optoelectronic applications are also highlighted. The major current challenges for the development of covalently linked nanohybrids of porphyrins or phthalocyanines and carbon nanostructures are also presented.

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